人甲状腺球蛋白基因的无意义相关的选择性剪接。

Fernando M Mendive, Carina M Rivolta, Rogelio González-Sarmiento, Geraldo Medeiros-Neto, Héctor M Targovnik
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引用次数: 8

摘要

简介:我们在之前的文章中描述了甲状腺球蛋白(TG)基因22外显子的无义突变(4588C>T, R1511X),该突变发生在一个有复杂先天性甲状腺肿病史的家族成员中。在突变的甲状腺中,全长甲状腺球蛋白mRNA几乎检测不到。然而,一个较小的转录本被检测到,其中突变的外显子22被跳过,读取框被恢复。可以想象,选择性剪接可能是一种参与拯救无义突变的机制。方法:为了研究替代mRNA的检测是由于其浓度增加还是在没有正常全长mRNA竞争对手的情况下逆转录- pcr过程中优先扩增,我们建立了一个提供竞争mRNA的实验。我们还利用野生型和突变的小基因研究了4588C>T突变对外显子定义和加工的影响。结果:缺失22号外显子的替代mRNA的检测不是由于全长竞争者的缺失引起的。相反,我们的研究结果表明,替代转录物优先在突变甲状腺中积累,其水平与对照组织中的全长转录物相似。野生型和突变minigenes的瞬时表达实验表明,突变外显子的剪接效率与野生型一样高,这表明4588C>T突变不会干扰外显子22的定义和加工。结论:本文描述的TG基因的选择性剪接构成了一种新的无义相关的选择性剪接。我们已经证明突变本身不干扰外显子的定义和处理。我们的结果支持突变外显子的选择性剪接是由阅读框的中断驱动的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonsense-associated alternative splicing of the human thyroglobulin gene.

Introduction: We have described in previous articles a nonsense mutation (4588C>T, R1511X) in exon 22 of the thyroglobulin (TG) gene in a member of a family with a complex history of congenital goiter. In the mutated thyroid gland, full-length thyroglobulin mRNA is almost undetectable. However, a smaller transcript is detected in which the mutated exon 22 is skipped and the reading frame restored. It is conceivable that alternative splicing might be a mechanism involved in the rescue of nonsense mutations.

Methods: To investigate whether the detection of the alternative mRNA is due to an increase in its concentration or its preferential amplification during reverse transcriptase-PCR in the absence of the normal full-length mRNA competitor, we set up an assay in which the competitor mRNA was provided. We also studied the effect of the 4588C>T mutation on exon definition and processing using wild-type and mutated minigenes.

Results: The detection of the alternative mRNA lacking exon 22 is not caused by the absence of the full-length competitor. In contrast, our results demonstrate that the alternative transcript preferentially accumulates in the mutated thyroid at a level similar to the full-length transcript in control tissue. Transient expression experiments with wild-type and mutated minigenes indicate that the mutated exon is as efficiently spliced as the wild-type, suggesting that the 4588C>T mutation does not interfere with exon 22 definition and processing.

Conclusions: The alternative splicing of the TG gene described in this article constitutes a new case of nonsense-associated alternative splicing. We have shown that the mutation itself does not interfere with exon definition and processing in vitro. Our results support the hypothesis that the alternative splicing of the mutated exon is driven by the interruption of the reading frame.

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